纳米技术
基质(水族馆)
材料科学
化学
催化作用
生物相容性材料
计算机科学
生化工程
纳米医学
生物传感器
作者
Hyun Ko,Jungsue Choi,H. Y. Noh,Sohyeon Seo,Heedong Kwon,Seungjune Lee,Hyoyoung Lee
出处
期刊:Small
[Wiley]
日期:2026-04-20
卷期号:22 (29): e73447-e73447
摘要
Single-atom nanozymes (SANs) emerge as promising alternatives to natural enzymes by precisely dispersing and controlling metal active sites at the atomic level, thereby maximizing catalytic site exposure and mimicking enzyme-like structures. Recently, strategies that integrate SANs with external stimuli to enhance catalytic efficiency or selectively trigger activation are attracting increasing attention in various biomedical fields. However, the underlying mechanisms of the performance enhancement of SANs through external stimuli remain unexplored. Here, we discuss the engineering principles and strategies to improve the performance of SANs, with a particular emphasis on stimuli-activable systems. Specifically, we review how external stimuli (such as light, ultrasound, and magnetic fields) can modulate the electronic structure of active sites and the physicochemical properties of supporting materials, thereby enhancing charge transfer, substrate activation, and reactive oxygen species generation. Furthermore, we provide an overview of the latest applications of stimuli-activable SANs in biosensing, cancer therapy, tissue regeneration, and theranostics platforms. Lastly, we provide the prospects, challenges, and opportunities for external-stimuli SANs.
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